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The '''human lungs''' are the organs of [[Respiration (physiology)|respiration]] in humans. Humans have two [[lung]]s, with the left being divided into two lobes and the right into three lobes. Together, the lungs contain approximately 1500 miles (2,400&nbsp;km) of airways and 300 to 500 million [[alveoli]], having a total surface area of about 70 m<sup>2</sup> in adults&nbsp;&mdash; roughly the same area as a singles [[badminton]] court. The surface area is roughly the same area as one side of a [[tennis]] court<ref>{{cite book |author=Notter, Robert H. |title=Lung surfactants: basic science and clinical applications |publisher=Marcel Dekker |location=New York, N.Y |year=2000 |pages=120 |isbn=0-8247-0401-0 |oclc= |url=http://books.google.com/books?id=pAuiWvNHwZcC&pg=PA120&lpg=PA120&dq=area+tennis+court+alveoli&source=web&ots=npC4gsCknM&sig=VJDxOB_U246erlV_uXHjXS3yzow&hl=en&sa=X&oi=book_result&resnum=3&ct=result |accessdate=2008-10-11}}</ref> Furthermore, if all of the capillaries that surround the alveoli were unwound and laid end to end, they would extend for about 620 miles.
The '''human lungs''' are the organs of [[Respiration (physiology)|respiration]] in humans. Humans have two [[lung]]s, with the left being divided into two lobes and the right into three lobes. Together, the lungs contain approximately 1500 miles (2,400&nbsp;km) of airways and 300 to 500 million [[alveoli]], having a total surface area of about 70 m<sup>2</sup> in adults&nbsp;&mdash; roughly the same area as a singles [[badminton]] court. The surface area is roughly the same area as one side of a [[tennis]] court<ref>{{cite book |author=Notter, Robert H. |title=Lung surfactants: basic science and clinical applications |publisher=Marcel Dekker |location=New York, N.Y |year=2000 |pages=120 |isbn=0-8247-0401-0 |oclc= |url=http://books.google.com/books?id=pAuiWvNHwZcC&pg=PA120&lpg=PA120&dq=area+tennis+court+alveoli&source=web&ots=npC4gsCknM&sig=VJDxOB_U246erlV_uXHjXS3yzow&hl=en&sa=X&oi=book_result&resnum=3&ct=result |accessdate=2008-10-11}}</ref> Furthermore, if all of the capillaries that surround the alveoli were unwound and laid end to end, they would extend for about 620 miles.



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== Organization ==
== Organization ==



Revision as of 17:04, 19 May 2009

Human lung
Frontal view of lungs cut open
Trachea branches into bronchi
Frontal view shows the position of the human lungs in relativity to the heart, as well as major arteries and veins
Details
Identifiers
Latinpulmo
TA98A06.5.01.001
TA23265
FMA7195
Anatomical terminology

The human lungs are the organs of respiration in humans. Humans have two lungs, with the left being divided into two lobes and the right into three lobes. Together, the lungs contain approximately 1500 miles (2,400 km) of airways and 300 to 500 million alveoli, having a total surface area of about 70 m2 in adults — roughly the same area as a singles badminton court. The surface area is roughly the same area as one side of a tennis court[1] Furthermore, if all of the capillaries that surround the alveoli were unwound and laid end to end, they would extend for about 620 miles.


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Organization

The conducting zone and the the respiratory zone (but not the alveoli) are made up of airways...

The conducting zone has no gas exchange with the blood, and is reinforced with cartilage and smooth muscle, which are very strong. Smooth muscle has variable resistance to air flow. The conducting zone warms the air to 37 degrees Celsius and humidifies the air. It also cleanses the air by removing particles. Every time you breathe in and out your lungs are hard at work.Your lungs are surrounded by your rib cage.

The respiratory zone is the site of gas exchange with blood.

The smooth muscle tone in bronchioles, and therefore bronchiolar diameter, is controlled by:

The intrapleural space is the potential space between the pleura lining the inner wall of the thoracic cage and the pleura lining the lungs.

Physiology

Total lung capacity (TLC) includes inspiratory reserve volume, tidal volume, expiratory reserve volume, and residual volume.[2] The total lung capacity depends on the person's age, height, weight, sex, and normally ranges between 4,000 and 6,000 cm3 (4 to 6 L). For example, females tend to have a 20–25% lower capacity than males. Tall people tend to have a larger total lung capacity than shorter people. Smokers have a lower capacity than nonsmokers. Lung capacity is also affected by altitude. People who are born and live at sea level will have a smaller lung capacity than people who spend their lives at a high altitude. In addition to the total lung capacity, one also measures the tidal volume, the volume breathed in with an average breath, which is about 500 cm3. For a detailed discussion of the various lung volumes, see the article on lung volumes.[3]

Typical resting adult respiratory rates are 10–20 breaths per minute with 1/3 of the breath time in inhalation.

Human lungs are to a certain extent 'overbuilt' and have a tremendous reserve volume as compared to the oxygen exchange requirements when at rest. This is the reason that individuals can smoke for years without having a noticeable decrease in lung function while still or moving slowly; in situations like these only a small portion of the lungs are actually perfused with blood for gas exchange. As oxygen requirements increase due to exercise, a greater volume of the lungs is perfused, allowing the body to reach its CO2/O2 exchange requirements.

An average human breathes around 11,000 liters of air (20% of which consists of pure oxygen) in one day.[4]

Diseases

Diseases of the human lung belong to respiratory diseases. The following is a list of important medical conditions involving the lung. Many of these are caused or worsened by smoking. Lung disorders are generally handled by general practitioners, although patients may be referred to a pulmonologist.

Transplantation now allows for a person to have a single lung transplant, a double-lung transplant, or a transplant of both the heart and lungs.

Modification of substances

The lungs convert angiotensin I to angiotensin II. In addition, they remove several blood-bourne substances, e.g. PGE1, PGE2, PGF, leukotrienes, serotonin, bradykinin. [5]

References

  1. ^ Notter, Robert H. (2000). Lung surfactants: basic science and clinical applications. New York, N.Y: Marcel Dekker. p. 120. ISBN 0-8247-0401-0. Retrieved 2008-10-11.
  2. ^ Weinberger SE (2004). Principles of Pulmonary Medicine (4th ed. ed.). Saunders. ISBN 0-7216-9548-5. {{cite book}}: |edition= has extra text (help)
  3. ^ Maton, Anthea (1993). Human Biology and Health. Englewood Cliffs, New Jersey, USA: Prentice Hall. ISBN 0-13-981176-1. {{cite book}}: Unknown parameter |coauthors= ignored (|author= suggested) (help)
  4. ^ http://health.howstuffworks.com/question98.htm
  5. ^ Walter F., PhD. Boron (2004). Medical Physiology: A Cellular And Molecular Approaoch. Elsevier/Saunders. ISBN 1-4160-2328-3. Page 605

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